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dc.contributor.editorDai, Lidong
dc.contributor.editorHu, Haiying
dc.contributor.editorJiang, Jianjun
dc.date.accessioned2023-05-11T17:22:18Z
dc.date.available2023-05-11T17:22:18Z
dc.date.issued2023
dc.identifierONIX_20230511_9783036572901_149
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/100132
dc.description.abstractThe Key Laboratory of High-temperature and High-pressure Study of the Earth’s Interior belongs to the Institute of Geochemistry, Chinese Academy of Sciences, China. It is a unique and authoritative key laboratory at the provincial and ministerial levels. The Key High-Pressure Laboratory is primarily focused on the high-temperature and high-pressure experimental sciences, in combination with filed geophysical observation, theoretical calculation and advanced analysis tests in order to explore the chemical composition, cycling structure, geological state, material circulation, etc., of deep Earth. The mainstream research subjects of the Laboratory mainly include: research and development of experimental platforms and measurement techniques at high temperatures and high pressures; high-pressure material synthesis and hot-pressed sintering techniques; physical and chemical characterizations (e.g. electrical conductivity, thermal conductivity, ultrasonic wave velocity, etc.) of minerals and rocks at conditions of high pressure and different oxygen fugacities by virtue of representative high-pressure apparatus, including autoclaves, piston cylinders, multi-anvil presses, diamond anvil cells and shock waves; high-pressure physiochemical behavior and storage states in the geological fluid and melt of deep Earth interior; high-pressure theoretical calculations; and high-pressure applications in the service of national economical and societal development.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: generalen_US
dc.subject.otherdiopside
dc.subject.otherthermodynamic properties
dc.subject.othereclogite model
dc.subject.otheradiabatic temperature gradient
dc.subject.otheradiabatic geotherm
dc.subject.otherlaser shock compression
dc.subject.othersound velocity
dc.subject.otherhigh-pressure
dc.subject.otherquartz
dc.subject.otherGrüneisen parameter
dc.subject.othersuper-earth
dc.subject.otherrock porosity
dc.subject.otherhigh isostatic pressure
dc.subject.othersample holder
dc.subject.othersandstone
dc.subject.otherelectrical conductivity
dc.subject.otherimpedance spectroscopy
dc.subject.otherwater
dc.subject.othertitanium-bearing olivine
dc.subject.otherepidote
dc.subject.otheramphibole
dc.subject.otherkaolinite
dc.subject.otherhigh pressure
dc.subject.otherpyrite
dc.subject.otherRaman spectroscopy
dc.subject.otherhigh temperature
dc.subject.othergabbro
dc.subject.othermineralogical proportions
dc.subject.otherdifferential stress
dc.subject.othercoesite
dc.subject.otherphase transition
dc.subject.othercalcite
dc.subject.othercrystallinity
dc.subject.othermineralogy
dc.subject.otherelectronic transition
dc.subject.otherhydrothermal
dc.subject.othertrace elements
dc.subject.otherzircon
dc.subject.otherreidite
dc.subject.otherhigh P–T experiment
dc.subject.otherdiamond anvil cell
dc.subject.otherin situ Raman spectroscopy
dc.subject.otherdensity functional theory
dc.subject.otherphase diagram
dc.subject.otherstructural phase transition
dc.subject.otherbrucite
dc.subject.otheratomistic simulations
dc.subject.otherhigh pressures
dc.subject.otherhigh temperatures
dc.subject.otherstructural properties
dc.subject.otherelastic properties
dc.subject.otherbulk modulus
dc.subject.othervibrational spectra
dc.subject.othern/a
dc.titleHigh-Pressure Physical and Chemical Behaviors of Minerals and Rocks
dc.typebook
oapen.identifier.doi10.3390/books978-3-0365-7291-8
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0
oapen.relation.isbn9783036572901
oapen.relation.isbn9783036572918
oapen.pages172
oapen.place.publicationBasel


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